Designed for heavy-duty pneumatic power transmission, this 6 hp piston air motor delivers reliable rotary power for industrial machinery. The piston design provides strong torque performance, while the 1:1 gear ratio enables direct power transfer. Flange mounting allows easy integration with compatible equipment.
Specification
| Model |
CCHN-HXHM14 |
| Power |
6 hp (4.5kW) |
| Gear Ratio |
1:1 |
| Rated Speed |
1000 rpm |
| Rated Torque |
43 Nm |
| Air Consumption |
6000 L/min |
| Air Pressure |
0.7 Mpa |
| Mounting Type |
Flange type |
| Port Size |
RC 1" |
| Hose Inner Diameter |
25 mm |
| Certificate |
CE |
| Warranty |
12 months |
Best For
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Heavy-Duty Pneumatic Drives: Applications requiring up to 6 hp (4.5 kW) of pneumatic power and 43 Nm rated torque.
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Large Industrial Machinery: Equipment that needs a high-power pneumatic motor for mechanical power transmission.
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High-Load Drive Systems: Machinery requiring substantial starting and running torque for demanding operating conditions.
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Flange-Mounted Equipment: Systems designed for a fixed flange connection and direct mechanical integration.
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Compressed-Air Powered Machinery: Industrial equipment with sufficient air capacity to support the motor's 6000 L/min air consumption at 0.7 MPa.
Not Recommended For
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Low-Power Equipment: Applications where a compact motor with less than 6 hp output is sufficient.
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Limited Air Supply Systems: Equipment that cannot provide the required 6000 L/min compressed-air flow at 0.7 MPa.
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Low-Speed Applications: Machinery requiring substantially lower operating speeds than the 1000 rpm rated speed.
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Variable Mounting Requirements: Systems that require basic or foot mounting rather than a fixed flange connection.
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Space-Constrained Equipment: Compact machines where the size and installation requirements of a high-power pneumatic motor are unsuitable.
Size (unit: mm)

Tips: How Do I Size the Air Supply for a 6 hp Piston Air Motor?
The 6 hp piston air motor has an air consumption of up to 6000 L/min at 0.7 MPa, so the compressed-air system should be sized accordingly. Before installation, check the air compressor capacity, working pressure, pipe diameter, hose inner diameter, and valve flow rate to ensure adequate airflow reaches the motor.
For stable operation, avoid undersized air lines or restrictive fittings that can cause excessive pressure drop. An air filter and other suitable air treatment components can also help maintain clean, properly conditioned compressed air. When the motor operates under higher loads or for extended periods, allow sufficient air supply capacity to maintain the required pressure and support consistent speed and torque.